HARDWARE · China Graph

HL-2A/HL-2M Tokamak

HARDWARE China Graph Dossier Available

Summary

The HL-2A and HL-2M tokamaks at SWIP in Chengdu are China's medium-scale tokamak experiments. HL-2M features upgraded heating power and advanced divertor configurations. These facilities provide experimental data on plasma stability and confinement relevant to both tokamak and FRC research.

Deep Dive Analysis

Intelligence Summary: HL-2A/HL-2M Tokamak

Node Identity: The HL-2A and HL-2M tokamaks at the Southwestern Institute of Physics (SWIP) in Chengdu are China's medium-scale tokamak experiments, serving as complementary platforms to the EAST tokamak at ASIPP/Hefei. HL-2A began operation in 2002 as China's first divertor tokamak, while HL-2M (upgraded from HL-2A) features significantly enhanced heating power, advanced divertor configurations, and improved plasma control systems. These facilities provide experimental data on plasma stability, confinement, and heating that is directly transferable to FRC and compact toroid research programs.

Strategic Relevance: The HL-2A/HL-2M tokamaks contribute to the FRC weapons program through three technical pathways. First, their NBI heating systems provide operational experience with neutral beam injection — the primary plasma heating method for both tokamaks and FRC devices. The NBI expertise developed on HL-2M directly informs the NBI heating design for HUST's HFRC facility. Second, HL-2M's advanced divertor configurations produce data on plasma-material interactions and edge plasma behavior, relevant to both fusion reactor design and FRC weapon effects on targets. Third, the plasma diagnostics suite on HL-2M — including Thomson scattering, charge exchange spectroscopy, and bolometry — provides design references for the diagnostic systems needed at HFRC and CAE's FRC pulsed neutron source facility.

Technical Focus / Capabilities:

  • NBI Heating Systems: HL-2M features upgraded neutral beam injection with multi-MW heating power — directly applicable to FRC plasma heating and sustainment at HFRC
  • Advanced Divertor Configuration: HL-2M's divertor design enables study of plasma-wall interactions and heat flux management — relevant to FRC weapon effects and plasma-target interactions
  • Plasma Diagnostics: Comprehensive diagnostic suite including Thomson scattering, charge exchange recombination spectroscopy, and bolometric imaging — transferable to FRC diagnostic systems
  • Plasma Stability Studies: Experimental investigation of MHD instabilities, disruption mitigation, and edge localized modes (ELMs) — providing stability insights applicable to FRC tilt and rotational modes
  • Current Drive Research: Electron cyclotron current drive and lower hybrid current drive experiments — techniques applicable to FRC current profile control

Network Linkage: HL-2A/HL-2M Tokamak maintains 4 documented connections: operated by SWIP (Southwestern Institute of Physics) (the host institution); uses NBI Heating Research (neutral beam injection systems); uses Plasma Diagnostics Development (diagnostic suite); contributes to D-T Fusion Bridge Program (plasma physics foundation). The tokamak's NBI expertise flows to the HFRC Facility through shared research programs, while its diagnostic capabilities inform FRC experimental design at HUST and CAE.

Key Findings

  • Technical Focus / Capabilities:
  • NBI Heating Systems: HL-2M features upgraded neutral beam injection with multi-MW heating power — directly applicable to FRC plasma heating and sustainment at HFRC
  • Advanced Divertor Configuration: HL-2M's divertor design enables study of plasma-wall interactions and heat flux management — relevant to FRC weapon effects and plasma-target interactions
  • Plasma Diagnostics: Comprehensive diagnostic suite including Thomson scattering, charge exchange recombination spectroscopy, and bolometric imaging — transferable to FRC diagnostic systems
  • Plasma Stability Studies: Experimental investigation of MHD instabilities, disruption mitigation, and edge localized modes (ELMs) — providing stability insights applicable to FRC tilt and rotational modes

Related Entities (4)

Network Graph

Explore HL-2A/HL-2M Tokamak and its connections in the interactive network graph.

View in Network Graph

Glossary Definition

The HL-2A and HL-2M tokamaks at SWIP in Chengdu are China's medium-scale tokamak experiments. HL-2M features upgraded heating power and advanced divertor configurations. These facilities provide exper

Category: Organizations View in Glossary →

Research References

Search the research archive for documents and investigations related to HL-2A/HL-2M Tokamak.

Search Research Archive

Country Analysis

This entity appears in the following country-specific network graphs:

Frequently Asked Questions

What is HL-2A/HL-2M Tokamak?
The HL-2A and HL-2M tokamaks at SWIP in Chengdu are China's medium-scale tokamak experiments. HL-2M features upgraded heating power and advanced divertor configurations. These facilities provide experimental data on plasma stability and confinement relevant to both tokamak and FRC research.
What is HL-2A/HL-2M Tokamak connected to?
HL-2A/HL-2M Tokamak is directly connected to 4 entities in the network graph, including SWIP (Southwestern Institute of Physics), NBI Heating Research, Plasma Diagnostics Development. These connections represent documented relationships such as operates, uses, uses. Explore the full network using the interactive graph for complete relationship mapping.
Where can I find more details about HL-2A/HL-2M Tokamak?
A full intelligence dossier is available for HL-2A/HL-2M Tokamak, including 0 source documents, deep-dive analysis, and network linkage assessment. Visit the dossier page for the complete profile.

Related Links